Pt quantum dots coupled with NiFe LDH nanosheets for efficient hydrogen evolution reaction at industrial current densities

被引:0
|
作者
Wang, Boxue [1 ]
Zhao, Xinru [1 ]
Sun, Huachuan [1 ]
Zhang, Mengling [1 ]
Chen, Mingpeng [1 ]
Qiu, Guoyang [1 ]
Zhou, Tong [1 ]
Li, Dequan [1 ]
Wu, Yuewen [1 ]
Liu, Chen [1 ]
Yang, Hang [1 ]
Lu, Qinjie [1 ]
Zhao, Jianhong [1 ]
Zhang, Yumin [1 ]
Zhang, Jin [1 ]
Cui, Hao [2 ]
Liu, Feng [2 ]
Liu, Qingju [1 ]
机构
[1] Yunnan Univ, Natl Ctr Int Res Photoelect & Energy Mat, Sch Mat & Energy, Yunnan Key Lab Micronano Mat & Technol, 2 Cuihu North Rd, Kunming 650091, Yunnan, Peoples R China
[2] Yunnan Precious Met Lab Co Ltd, Kunming 650106, Yunnan, Peoples R China
来源
MICROSTRUCTURES | 2025年 / 5卷 / 02期
基金
中国国家自然科学基金;
关键词
Pt quantum dots; electronic structure regulation; NiFe layered double hydroxide; industrial-level current density; hydrogen evolution reaction; WATER; NANOPARTICLES; CATALYST; CO;
D O I
10.20517/microstructures.2024.76
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Developing efficient and economical electrocatalysts for hydrogen generation at high current densities is crucial for advancing energy sustainability. Herein, a self-supported hydrogen evolution reaction (HER) electrocatalyst is rationally designed and prepared on a nickel foam through a simple two-step chemical etching method, which consists of Pt quantum dots (PtQDs) coupled with nickel-iron layered double hydroxide (NiFe LDH) nanosheets (named PtQDs@NiFe LDH). The characterization results indicate that the introduction of PtQDs induces more oxygen vacancies, thereby optimizing the electronic structure of PtQDs@NiFe LDH. This modification enhances the conductivity and accelerates the adsorption/desorption kinetics of hydrogen intermediates in PtQDs@NiFe LDH, ultimately resulting in exceptional catalytic performance for the HER at large current densities. Specifically, PtQDs @NiFe LDH delivers 500 and 2000 mA<middle dot>cm-2 with remarkably low overpotentials of 92 and 252 mV, respectively, markedly outperforming commercial Pt/C (eta 500 = 190 mV, eta 2000 = 436 mV). Moreover, when employing NiFe LDH precursor and the prepared PtQDs@NiFe LDH catalyst as the anode and cathode, respectively, in an overall water electrolysis system, only 1.66 V and 2.02 V are required to achieve 500 and 2000 mA<middle dot>cm-2, respectively, while maintaining robust stability for 200 h. This study introduces a feasible approach for developing HER electrocatalysts to achieve industrial-scale current densities.
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页数:13
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